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AB14984

Anti-KAT3B / p300 antibody [3G230 / NM-11] - ChIP Grade

5

(11 리뷰들)

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(95 제품이 사용된 논문 )

Anti-KAT3B / p300 antibody [3G230 / NM-11] - ChIP Grade (ab14984) is a mouse monoclonal antibody detecting KAT3B / p300 in Western Blot, IP, ChIP. Suitable for Human.

- Over 80 publications
- Trusted since 2004
4 이미지
Western blot - Anti-KAT3B / p300 antibody [3G230 / NM-11] - ChIP Grade (AB14984)
  • WB

Project

Western blot - Anti-KAT3B / p300 antibody [3G230 / NM-11] - ChIP Grade (AB14984)

This blot was produced using a 3-8% Tris Acetate gel under the TA buffer system. The gel was run at 150V for 60 minutes before being transferred onto a Nitrocellulose membrane at 30V for 70 minutes. The membrane was then blocked for an hour using 3% Milk before being incubated with ab14984 overnight at 4°C. Antibody binding was detected using an anti-mouse secondary antibody conjugated to HRP, and visualised using ECL development solution.

All lanes:

Western blot - Anti-KAT3B / p300 antibody [3G230 / NM-11] - ChIP Grade (ab14984) at 5 µg/mL

Lane 1:

HeLa (Human epithelial carcinoma cell line) Nuclear Lysate at 20 µg

Lane 2:

Jurkat nuclear extract lysate (<a href='/ko/products/unavailable/jurkat-nuclear-extract-lysate-ab14844'>ab14844</a>) at 20 µg

Secondary

All lanes:

Goat polyclonal Secondary Antibody to Mouse IgG - H&L (HRP), pre-adsorbed at 1/5000 dilution

Predicted band size: 264 kDa

Observed band size: 300 kDa,75 kDa

true

Exposure time: 20min

ChIP - Anti-KAT3B / p300 antibody [3G230 / NM-11] - ChIP Grade (AB14984)
  • ChIP

Unknown

ChIP - Anti-KAT3B / p300 antibody [3G230 / NM-11] - ChIP Grade (AB14984)

ChIP was performed on HeLa chromatin from 4 million cells using 8ug of ab14984. Positive control locus IRS2 shows enrichment over the negative control MyoD as expected.

This data was provided by an anonymous collaborator.

ChIP - Anti-KAT3B / p300 antibody [3G230 / NM-11] - ChIP Grade (AB14984)
  • ChIP

PubMed

ChIP - Anti-KAT3B / p300 antibody [3G230 / NM-11] - ChIP Grade (AB14984)

CBX7 promotes p300-PTEN promoter binding and Histone H3 acetylation in pancreatic cancer cells. CTRL, CBX7, and CBX7i Panc-1 cells were subjected to CHIP assay to determine the enrichment of p300 and acetylated Histone H3 on PTEN promoter. (*,# P<0.05, compared with the control group.)

ChIP assay was performed using a ChIP qPCR Assay Kit. The bound PTEN promoter sequence was verified using RT-PCR (Real-Time polymerase chain reaction) assay with DNA fragments immunoprecipitated by anti-p300 antibodies (ab14984), anti-acetyl-histone H3, or control rabbit IgG. The DNA fragments were amplified by quantitative RT-PCR. The RT-PCR primers are 5′-CGG GCG GTG ATG TGG C-3′ and 5′-GCC TCA CAG CGG CTC AAC TCT-3′.

Image from Ni S et al., Oncotarget. 2017;8(5):8010-8021. Fig 5C.; doi: 10.18632/oncotarget.14037.

ChIP - Anti-KAT3B / p300 antibody [3G230 / NM-11] - ChIP Grade (AB14984)
  • ChIP

PubMed

ChIP - Anti-KAT3B / p300 antibody [3G230 / NM-11] - ChIP Grade (AB14984)

The recruitment of p300 to the genes that exhibited changes in H3K56ac was analyzed using ChIP analysis, with IL-8 as a positive control and Mef2c, GATA4, and Nkx2.5 as negative controls.

Image from Liu Y et al., J Biol Chem. 2012;287(49):41469-80. Fig 5(B).; doi: 10.1074/jbc.M112.367847.

관련 conjugated 항체와 다양한 조성의 항체 (1)

  • Carrier free

    Anti-KAT3B / p300 antibody [3G230 / NM-11] - BSA and Azide free

주요 정보

Host species

Mouse

Clonality

Monoclonal

Clone number

3G230 / NM-11

Isotype

IgG1

Light chain 타입

kappa

Carrier free

No

Reacts with

Human

Applications

ChIP, WB

applications

Immunogen

The exact immunogen used to generate this antibody is proprietary information.

Specificity

<p>Published data suggest that this antibody cross-reacts with both CBP and P300 (PMID: 8995708 and 9219037&#41;. This paper (PMID: 9219037&#41; also maps the epitope of this antibody to 2071-2091 of CBP.</p>

Reactivity 정보

{ "title": "Reactivity Data", "filters": { "stats": ["", "Species", "Dilution Info", "Notes"], "tabs": { "all-applications": {"fullname" : "All Applications", "shortname": "All Applications"}, "ChIP" : {"fullname" : "ChIP", "shortname":"ChIP"}, "WB" : {"fullname" : "Western blot", "shortname":"WB"} }, "product-promise": { "all": "all", "testedAndGuaranteed": "tested", "guaranteed": "expected", "predicted": "predicted", "notRecommended": "not-recommended" } }, "values": { "Human": { "ChIP-species-checked": "testedAndGuaranteed", "ChIP-species-dilution-info": "2 µg/cells for 6 µg/cells", "ChIP-species-notes": "<p></p>", "WB-species-checked": "testedAndGuaranteed", "WB-species-dilution-info": "1 µg/mL", "WB-species-notes": "<p>We recommend using 3% milk as the blocking agent in Western Blot.</p>" }, "Rat": { "ChIP-species-checked": "predicted", "ChIP-species-dilution-info": "", "ChIP-species-notes": "", "WB-species-checked": "predicted", "WB-species-dilution-info": "", "WB-species-notes": "" } } }

제품 세부 정보

What is this antibody validated in?
Anti-KAT3B / p300 antibody [3G230 / NM-11] - ChIP Grade (ab14984) is a mouse monoclonal antibody and is validated for use in Western Blot (WB), Immunoprecipitation (IP), ChIP in Human samples.

What is the molecular weight of KAT3B / p300?
Anti-KAT3B / p300 [3G230 / NM-11] - ChIP Grade (ab14984) specifically detects a band for KAT3B / p300 (UniProt: Q09472) at a molecular weight of 300kDa.

Trusted by the scientific community
Anti-KAT3B / p300 [3G230 / NM-11] - ChIP Grade (ab14984) was first used in a scientific publication in 2004 and has been cited over 80 times in peer-reviewed journals.

Reviewed by scientists
Anti-KAT3B / p300 [3G230 / NM-11] - ChIP Grade (ab14984) has over 10 independent reviews from customers.

Other related products
We have a range of other formats of antibody clone [3G230 / NM-11] also available for your convenience: ab14984, HRP - ab200186, Carrier free - ab264432

Want a custom formulation?
This antibody clone is manufactured by Abcam. If you require a custom buffer formulation or conjugation for your experiments, please contact orders@abcam.com

특성 및 보관 정보

제형
Liquid
Purification 테크닉
Affinity purification
보관 버퍼
pH: 7.4 Preservative: 0.02% Sodium azide Constituents: PBS, 6.97% L-Arginine
배송 시 보관 조건
Blue Ice
적절한 단기 보관 기간
1-2 weeks
적절한 단기 보관 조건
+4°C
적절한 장기 보관 조건
-20°C
분주 정보
Upon delivery aliquot
보관 정보
Avoid freeze / thaw cycle

추가 정보

This supplementary information is collated from multiple sources and compiled automatically.

KAT3B also known as p300 is a histone acetyltransferase with a molecular weight of approximately 300 kDa. Known for its ability to acetylate histone and non-histone proteins p300 modulates gene expression by altering chromatin structure. The protein is ubiquitously expressed across various tissues impacting numerous cellular processes by its mechanical functions of modifying chromatin.
Biological function summary

KAT3B/p300 influences multiple cellular activities like cell growth differentiation and apoptosis. It functions as a transcriptional coactivator and integrates various signaling pathways into the cell's gene expression program. p300 often forms complexes with other transcription factors enhancing or repressing their activity based on the cellular context. By modifying transcription factors it plays an essential role in controlling cell fate decisions.

Pathways

P300 participates in the regulation of significant cellular processes including the Wnt signaling pathway and the p53 pathway. In the Wnt signaling pathway p300 acts alongside beta-catenin to regulate gene expression while in the p53 pathway it acetylates the p53 protein influencing the cell’s response to DNA damage. These pathways highlight p300's interaction with important proteins such as CBP (CREB-binding protein) which shares a similar functional repertoire and works synergistically in gene regulation.

P300 is implicated in cancers and congenital disorders. In cancer aberrant regulation or mutation of p300 can lead to uncontrolled cell proliferation and tumor growth; p300 inhibitors like C646 are researched for their therapeutic potential. Additionally Rubinstein-Taybi syndrome a congenital disorder results from mutations in the p300 gene showcasing p300’s importance in developmental processes. The interplay of p300 with proteins such as CBP is also relevant in these conditions where disrupted interactions may lead to disease manifestation.

제품 프로토콜

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타겟 정보

Functions as a histone acetyltransferase and regulates transcription via chromatin remodeling (PubMed : 23415232, PubMed : 23934153, PubMed : 40240600, PubMed : 8945521). Acetylates all four core histones in nucleosomes (PubMed : 23415232, PubMed : 23934153, PubMed : 8945521). Histone acetylation gives an epigenetic tag for transcriptional activation (PubMed : 23415232, PubMed : 23934153, PubMed : 8945521). Mediates acetylation of histone H3 at 'Lys-122' (H3K122ac), a modification that localizes at the surface of the histone octamer and stimulates transcription, possibly by promoting nucleosome instability (PubMed : 23415232). Mediates acetylation of histone H3 at 'Lys-18' and 'Lys-27' (H3K18ac and H3K27ac, respectively) (PubMed : 21131905, PubMed : 23911289). Also able to acetylate histone lysine residues that are already monomethylated on the same side chain to form N6-acetyl-N6-methyllysine (Kacme), an epigenetic mark of active chromatin associated with increased transcriptional initiation (PubMed : 37731000). Catalyzes formation of histone H4 acetyl-methylated at 'Lys-5' and 'Lys-12' (H4K5acme and H4K12acme, respectively) (PubMed : 37731000). In response to DNA damage, catalyzes acetylation of histone H1 at 'Lys-75' (H1K75ac) following histone H1 deamidation by CTPS1, increasing chromatin accessibility to facilitate the recruitment of DNA repair proteins (PubMed : 40240600). Also functions as acetyltransferase for non-histone targets, such as ALX1, HDAC1, PRDM16, PRMT1, SIRT2, STAT3, ZNF76 or GLUL (PubMed : 12929931, PubMed : 15653507, PubMed : 16285960, PubMed : 16337145, PubMed : 16762839, PubMed : 18722353, PubMed : 18782771, PubMed : 26990986). Acetylates 'Lys-131' of ALX1 and acts as its coactivator (PubMed : 12929931). Acetylates SIRT2 and is proposed to indirectly increase the transcriptional activity of p53/TP53 through acetylation and subsequent attenuation of SIRT2 deacetylase function (PubMed : 18722353). Following DNA damage, forms a stress-responsive p53/TP53 coactivator complex with JMY which mediates p53/TP53 acetylation, thereby increasing p53/TP53-dependent transcription and apoptosis (PubMed : 11511361, PubMed : 15448695). Promotes chromatin acetylation in heat shock responsive HSP genes during the heat shock response (HSR), thereby stimulating HSR transcription (PubMed : 18451878). Acetylates HDAC1 leading to its inactivation and modulation of transcription (PubMed : 16762839). Acetylates 'Lys-247' of EGR2 (By similarity). Acts as a TFAP2A-mediated transcriptional coactivator in presence of CITED2 (PubMed : 12586840). Plays a role as a coactivator of NEUROD1-dependent transcription of the secretin and p21 genes and controls terminal differentiation of cells in the intestinal epithelium. Promotes cardiac myocyte enlargement (PubMed : 14752053). Can also mediate transcriptional repression. Acetylates FOXO1 and enhances its transcriptional activity (PubMed : 15890677). Acetylates STAT3 at different sites, promoting both STAT3 dimerization and activation and recruitment to chromatin (PubMed : 15653507, PubMed : 16285960, PubMed : 18782771). Acetylates BCL6 which disrupts its ability to recruit histone deacetylases and hinders its transcriptional repressor activity (PubMed : 12402037). Participates in CLOCK or NPAS2-regulated rhythmic gene transcription; exhibits a circadian association with CLOCK or NPAS2, correlating with increase in PER1/2 mRNA and histone H3 acetylation on the PER1/2 promoter (PubMed : 14645221). Acetylates MTA1 at 'Lys-626' which is essential for its transcriptional coactivator activity (PubMed : 16617102). Acetylates XBP1 isoform 2; acetylation increases protein stability of XBP1 isoform 2 and enhances its transcriptional activity (PubMed : 20955178). Acetylates PCNA; acetylation promotes removal of chromatin-bound PCNA and its degradation during nucleotide excision repair (NER) (PubMed : 24939902). Acetylates MEF2D (PubMed : 21030595). Acetylates and stabilizes ZBTB7B protein by antagonizing ubiquitin conjugation and degradation, this mechanism may be involved in CD4/CD8 lineage differentiation (PubMed : 20810990). Acetylates GABPB1, impairing GABPB1 heterotetramerization and activity (By similarity). Acetylates PCK1 and promotes PCK1 anaplerotic activity (PubMed : 30193097). Acetylates RXRA and RXRG (PubMed : 17761950). Acetylates isoform M2 of PKM (PKM2), promoting its homodimerization and conversion into a protein kinase (PubMed : 24120661). Acetylates RPTOR in response to leucine, leading to activation of the mTORC1 complex (PubMed : 30197302, PubMed : 32561715). Acetylates RICTOR, leading to activation of the mTORC2 complex (PubMed : 22084251). Mediates cAMP-gene regulation by binding specifically to phosphorylated CREBBP (PubMed : 8917528). In addition to protein acetyltransferase, can use different acyl-CoA substrates, such as (2E)-butenoyl-CoA (crotonyl-CoA), butanoyl-CoA (butyryl-CoA), 2-hydroxyisobutanoyl-CoA (2-hydroxyisobutyryl-CoA), lactoyl-CoA, propanoyl-CoA (propionyl-CoA) or isonicotinyl-CoA, and is able to mediate protein crotonylation, butyrylation, 2-hydroxyisobutyrylation, lactylation, propionylation or isonicotinylation, respectively (PubMed : 17267393, PubMed : 25818647, PubMed : 29775581, PubMed : 31645732, PubMed : 34545082). Acts as a histone crotonyltransferase; crotonylation marks active promoters and enhancers and confers resistance to transcriptional repressors (PubMed : 25818647). Histone crotonyltransferase activity is dependent on the concentration of (2E)-butenoyl-CoA (crotonyl-CoA) substrate and such activity is weak when (2E)-butenoyl-CoA (crotonyl-CoA) concentration is low (PubMed : 25818647). Also acts as a histone butyryltransferase; butyrylation marks active promoters (PubMed : 17267393). Catalyzes histone lactylation in macrophages by using lactoyl-CoA directly derived from endogenous or exogenous lactate, leading to stimulates gene transcription (PubMed : 31645732). Acts as a protein-lysine 2-hydroxyisobutyryltransferase; regulates glycolysis by mediating 2-hydroxyisobutyrylation of glycolytic enzymes (PubMed : 29775581). Functions as a transcriptional coactivator for SMAD4 in the TGF-beta signaling pathway (PubMed : 25514493).. (Microbial infection) In case of HIV-1 infection, it is recruited by the viral protein Tat. Regulates Tat's transactivating activity and may help inducing chromatin remodeling of proviral genes. Binds to and may be involved in the transforming capacity of the adenovirus E1A protein.
See full target information EP300

대체 명칭 보기

P300, EP300, Histone acetyltransferase p300, p300 HAT, E1A-associated protein p300, Histone butyryltransferase p300, Histone crotonyltransferase p300, Protein 2-hydroxyisobutyryltransferase p300, Protein isonicotinyltransferase p300, Protein lactyltransferas p300, Protein propionyltransferase p300

제품이 사용된 논문 (95)

Recent publications for all applications. Explore the 전체 목록and refine your search

Nature genetics 57:2468-2481 PubMed41044247

2025

Targeting histone H2B acetylated enhanceosomes via p300/CBP degradation in prostate cancer.

Applications

Unspecified application

Species

Unspecified reactive species

Jie Luo,Zhixiang Chen,Yuanyuan Qiao,Jean Ching-Yi Tien,Eleanor Young,Rahul Mannan,Somnath Mahapatra,Rupam Bhattacharyya,Lanbo Xiao,Tongchen He,Sanjana Eyunni,Yuping Zhang,Yang Zheng,Fengyun Su,Xuhong Cao,Rui Wang,Yunhui Cheng,Rithvik Seri,James George,Miriam Shahine,Stephanie J Miner,Matthew G Rees,Melissa M Ronan,Jennifer A Roth,Ulka Vaishampayan,Mi Wang,Shaomeng Wang,Abhijit Parolia,Arul M Chinnaiyan

Nucleic acids research 53: PubMed40889156

2025

SMAD3 and p300 complex scaffolding by long non-coding RNA LIMD1-AS1 promotes TGF-β-induced breast cancer cell plasticity.

Applications

Unspecified application

Species

Unspecified reactive species

Chuannan Fan,Davy Cats,Miriam Selle,Olga Khorosjutina,Soniya Dhanjal,Bernhard Schmierer,Hailiang Mei,Peter Ten Dijke,Qian Wang

Molecular cancer 24:170 PubMed40495214

2025

CREPT is required for the metastasis of triple-negative breast cancer through a co-operational-chromatin loop-based gene regulation.

Applications

Unspecified application

Species

Unspecified reactive species

Jianghua Li,Lu Xu,Jiayu Wang,Xuning Wang,Yuting Lin,Alex Yutian Zou,Fangli Ren,Yinyin Wang,Jun Li,Zhijie Chang

Cell communication and signaling : CCS 22:411 PubMed39180088

2024

ΔNp63 bookmarks and creates an accessible epigenetic environment for TGFβ-induced cancer cell stemness and invasiveness.

Applications

Unspecified application

Species

Unspecified reactive species

Eleftheria Vasilaki,Yu Bai,Mohamad Moustafa Ali,Anders Sundqvist,Aristidis Moustakas,Carl-Henrik Heldin

npj aging 10:24 PubMed38704365

2024

EPB41L4A-AS1 is required to maintain basal autophagy to modulates Aβ clearance.

Applications

Unspecified application

Species

Unspecified reactive species

Ziqiang Wang,Ruomei Wang,Lixin Niu,Xiaoyan Zhou,Jinxiang Han,Kun Li

Immunity 57:1005-1018.e7 PubMed38697116

2024

A CTCF-binding site in the Mdm1-Il22-Ifng locus shapes cytokine expression profiles and plays a critical role in early Th1 cell fate specification.

Applications

Unspecified application

Species

Unspecified reactive species

Chunhong Liu,Hiroyuki Nagashima,Nilisha Fernando,Victor Bass,Jaanam Gopalakrishnan,Sadie Signorella,Will Montgomery,Ai Ing Lim,Oliver Harrison,Lauren Reich,Chen Yao,Hong-Wei Sun,Stephen R Brooks,Kan Jiang,Vijayaraj Nagarajan,Yongbing Zhao,Seolkyoung Jung,Rachael Phillips,Yohei Mikami,Caleb A Lareau,Yuka Kanno,Dragana Jankovic,Martin J Aryee,Aleksandra Pękowska,Yasmine Belkaid,John O'Shea,Han-Yu Shih

iScience 27:109245 PubMed38439973

2024

N-methyladenosine-modified VGLL1 promotes ovarian cancer metastasis through high-mobility group AT-hook 1/Wnt/β-catenin signaling.

Applications

Unspecified application

Species

Unspecified reactive species

Han Li,Liming Cai,Qiuzhong Pan,Xingyu Jiang,Jingjing Zhao,Tong Xiang,Yan Tang,Qijing Wang,Jia He,Desheng Weng,Yanna Zhang,Zhongqiu Liu,Jianchuan Xia

Nature communications 14:7759 PubMed38030596

2023

HDAC8-mediated inhibition of EP300 drives a transcriptional state that increases melanoma brain metastasis.

Applications

Unspecified application

Species

Unspecified reactive species

Michael F Emmons,Richard L Bennett,Alberto Riva,Kanchan Gupta,Larissa Anastasio Da Costa Carvalho,Chao Zhang,Robert Macaulay,Daphne Dupéré-Richér,Bin Fang,Edward Seto,John M Koomen,Jiannong Li,Y Ann Chen,Peter A Forsyth,Jonathan D Licht,Keiran S M Smalley

Nature 622:173-179 PubMed37731000

2023

Acetyl-methyllysine marks chromatin at active transcription start sites.

Applications

Unspecified application

Species

Unspecified reactive species

William J Lu-Culligan,Leah J Connor,Yixuan Xie,Babatunde E Ekundayo,Brendan T Rose,Martin Machyna,Andreas P Pintado-Urbanc,Joshua T Zimmer,Isaac W Vock,Natarajan V Bhanu,Megan C King,Benjamin A Garcia,Franziska Bleichert,Matthew D Simon

Clinical and translational medicine 13:e1389 PubMed37715457

2023

METTL3-mediated N6-methyladenosine exacerbates ferroptosis via m6A-IGF2BP2-dependent mitochondrial metabolic reprogramming in sepsis-induced acute lung injury.

Applications

Unspecified application

Species

Unspecified reactive species

Hao Zhang,Dan Wu,Yanghanzhao Wang,Kefang Guo,Charles B Spencer,Lilibeth Ortoga,Mengdi Qu,Yuxin Shi,Yuwen Shao,Zhiping Wang,Juan P Cata,Changhong Miao
제품이 사용된 논문 모두 보기

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